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Microwave fluidic sensor using enhanced coupling peripheral Microstrip split-ring resonator sensor

机译:微波流体传感器采用增强型连接外围微带分流环谐振器传感器

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In this paper, a new type of microwave fluidic sensor using enhanced coupling peripheral microstrip split-ring resonator is studied in order to analyze the effect of Q-factor and insertion loss with several common liquids. The technique is based on perturbation theory, in which the resonant frequency and Q-factor of the microwave resonator depend on the dielectric properties of the resonator. A Microstrip split-ring resonator with two gaps is implemented for the design of the sensors. Several types of solvents are tested with quartz capillary to verify the sensor performance by simulation. At 2.4 GHz, the split-ring resonator demonstrates significant changes in resonant frequency. Finally, a comparison between previous research works is performed in order to evaluate the effectiveness of resonator sensors for the development of material characterization industry.
机译:本文研究了一种新型,采用增强型耦合外围微带分流环谐振器的新型微波流体传感器,以分析Q系数和插入损耗与几种常见液体的影响。该技术基于扰动理论,其中微波谐振器的谐振频率和Q系数取决于谐振器的电介质特性。为传感器的设计实现了具有两个间隙的微带分流环谐振器。用石英毛细管测试几种类型的溶剂,以通过模拟验证传感器性能。在2.4 GHz,分流环谐振器展示了谐振频率的显着变化。最后,进行先前研究作品之间的比较,以评估谐振器传感器在材料特征行业发展的效果。

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